Title :
A probabilistic approach to aircraft conflict detection
Author :
Prandini, Maria ; Hu, Jianghai ; Lygeros, John ; Sastry, Shankar
Author_Institution :
Dept. of Electron. for Autom., Brescia Univ., Italy
fDate :
12/1/2000 12:00:00 AM
Abstract :
Conflict detection and resolution schemes operating at the mid-range and short-range level of the air traffic management process are discussed. Probabilistic models for predicting the aircraft position in the near-term and mid-term future are developed. Based on the mid-term prediction model, the maximum instantaneous probability of conflict is proposed as a criticality measure for two aircraft encounters. Randomized algorithms are introduced to efficiently estimate this measure of criticality and provide quantitative bounds on the level of approximation introduced. For short-term detection, approximate closed-form analytical expressions for the probability of conflict are obtained, using the short-term prediction model. Based on these expressions, an algorithm for decentralized conflict detection and resolution that generalizes potential fields methods for path planning to a probabilistic dynamic environment is proposed. The algorithms are validated using Monte Carlo simulations
Keywords :
Monte Carlo methods; air traffic control; probability; randomised algorithms; Monte Carlo simulations; air traffic management; aircraft conflict detection; approximate closed-form analytical expressions; conflict resolution; criticality measure; mid-term prediction model; potential fields methods; probabilistic approach; probabilistic dynamic environment; probabilistic models; quantitative bounds; randomized algorithms; short-term prediction model; Aerospace control; Air traffic control; Aircraft; Automation; Energy management; Power system management; Predictive models; Safety; Technology management; Traffic control;
Journal_Title :
Intelligent Transportation Systems, IEEE Transactions on
DOI :
10.1109/6979.898224